A smart microfluidic platform for rapid multiplexed detection of foodborne pathogens

被引:22
作者
Azinheiro, Sarah [1 ]
Kant, Krishna [1 ]
Shahbazi, Mohammad-Ali [2 ]
Garrido-Maestu, Alejandro [1 ]
Prado, Marta [1 ]
Dieguez, Lorena [1 ]
机构
[1] Int Iberian Nanotechnol Lab INL, Dept Life Sci, Braga, Portugal
[2] Univ Helsinki, Fac Pharm, Div Pharmaceut Chem & Technol, Helsinki, Finland
关键词
3D sponge; Foodborne pathogen; Microfluidic device; Multiplexed detection; qPCR; LISTERIA-MONOCYTOGENES; SALMONELLA SPP; SEPARATION; PCR;
D O I
10.1016/j.foodcont.2020.107242
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Rapid and sensitive detection of foodborne pathogens in food industry is of high importance in day-to-day practice to ensure safe food. To address this issue, multiple foodborne pathogens are targeted for rapid identification based in DNA amplification. A 3D PDMS sponge was fabricated using salt crystals as scarifying mold and functionalized with a ligand, apolipoprotein-H (ApoH), to test bacterial capturing for both Gram positive (L. monocytogenes) and negative bacteria (Salmonella spp.), in a microfluidic device. Pure culture of both pathogens in a range of similar to 10-10(5) CFU/mL were tested and the application of the developed automated pre-concentration protocol in real samples was verified using spiked surface samples after swab sampling. Bacterial DNA was extracted directly from the sponge and used for Real Time quantitative Polymerase Chain Reaction (qPCR) detection. The sponges did not show any significant resistance to sample flow and could easily be incorporated in a microfluidic device. A capture efficiency above 70% was observed for both targeted (Gram positive and Gram negative) pathogens and a Limit of Detection (LoD) in the range of 10(3) and 10(4) CFU/mL was obtained for Salmonella spp. and L. monocytogenes, respectively. Using this approached, we are able to perform multiplexed (Gram positive and Gram negative) capturing and reduce the enrichment time compared to the gold standard plate culture (over 1-day) method. The use of a 3D sponge for direct capturing of multiplexed pathogen on microfluidic device, followed by qPCR detection is an efficient and versatile method to stratify the presence of bacteria. This approach and methodology has potential to be integrated in full automatized device and used as point of need (PoN) system for foodborne pathogen stratification in food packaging/production industries.
引用
收藏
页数:7
相关论文
共 23 条
[1]  
[Anonymous], 2016, CLC SEQUENCE VIEWER
[2]  
[Anonymous], FOOD SAFETY
[3]  
[Anonymous], MICROMACHINES MICROF
[4]   Rational design of DNA sequence-based strategies for subtyping Listeria monocytogenes [J].
Cai, S ;
Kabuki, DY ;
Kuaye, AY ;
Cargioli, TG ;
Chung, MS ;
Nielsen, R ;
Wiedmann, M .
JOURNAL OF CLINICAL MICROBIOLOGY, 2002, 40 (09) :3319-3325
[5]   Botulism diagnostics:: From clinical symptoms to in vitro assays [J].
Cai, Shuowei ;
Singh, Bal Ram ;
Sharma, Shashi .
CRITICAL REVIEWS IN MICROBIOLOGY, 2007, 33 (02) :109-125
[6]   Detection of Virulence Genes and Growth Potential in Listeria monocytogenes Strains Isolated from Ricotta Salata Cheese [J].
Coroneo, Valentina ;
Carraro, Valentina ;
Aissani, Nadhem ;
Sanna, Adriana ;
Ruggeri, Alessandra ;
Succa, Sara ;
Meloni, Barbara ;
Pinna, Antonella ;
Sanna, Clara .
JOURNAL OF FOOD SCIENCE, 2016, 81 (01) :M114-M120
[7]   Surveillance for Foodborne Disease Outbreaks - United States, 2009-2015 [J].
Dewey-Mattia, Daniel ;
Manikonda, Karunya ;
Hall, Aron J. ;
Wise, Matthew E. ;
Crowe, Samuel J. .
MMWR SURVEILLANCE SUMMARIES, 2018, 67 (10) :1-11
[8]  
EFSA & ECDC, 2018, EFSA Journal, V16
[9]   Evaluation of microplate immunocapture method for detection of Vibrio cholerae, Salmonella Typhi and Shigella flexneri from food [J].
Fakruddin, Md. ;
Hossain, Md. Nur ;
Ahmed, Monzur Morshed .
BMC MICROBIOLOGY, 2017, 17
[10]   Combination of Immunomagnetic Separation and Real-Time Recombinase Polymerase Amplification (IMS-qRPA) for Specific Detection of Listeria monocytogenes in Smoked Salmon Samples [J].
Garrido-Maestu, Alejandro ;
Azinheiro, Sarah ;
Carvalho, Joana ;
Prado, Marta .
JOURNAL OF FOOD SCIENCE, 2019, 84 (07) :1881-1887